Production of hydrogen energy from biomass: Prospects and challenges

Nebechi Kate Obiora , Chika Oliver Ujah , Christian O. Asadu , Funsho Olaitan Kolawole , Benjamin Nnamdi Ekwueme
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Abstract

The acceleration of the energy transition away from traditional energy systems depends on the inclusion of H2 in energy plans. Using biomass to produce hydrogen energy holds significant promise in the field of renewable energy. This article explores the history of biomass as a sustainable energy source and highlights the important role of hydrogen energy. Various biomass hydrogen conversion technologies, including thermochemical, biological, electrochemical, and hybrid processes, are discussed and compared to other renewable energy sources. Given hydrogen energy inclusion into the energy mix, comparisons are made between methods of biomass-to-hydrogen conversion in terms of cost per kg of H2, power consumption in kWh as well as feedstocks utilized for hydrogen production, and their strengths and weaknesses. Case study applications of these conversion methodologies are highlighted and their strengths as well as limitations are addressed in the course of discussion. This article provides an in-depth look at the prospects and challenges of biomass hydrogen production, providing a review of the research literature, insights into efficiency improvements, level of advancement technology, and catalyst development. The role of catalysts, machine learning, and artificial intelligence along with other factors for improving hydrogen production were discussed. Challenges such as food supply, techno-economic constraints, environmental impact, and energy consumption have all been examined. The article concludes by highlighting current applications, prospects, and the overall importance of biomass hydrogen in transportation, business processes, and policy changes.

利用生物质生产氢能:前景与挑战
加快能源转型,摆脱传统能源系统,取决于将氢能纳入能源计划。利用生物质生产氢能在可再生能源领域大有可为。本文探讨了生物质作为可持续能源的历史,并强调了氢能的重要作用。文章讨论了各种生物质氢转化技术,包括热化学、生物、电化学和混合工艺,并将其与其他可再生能源进行了比较。考虑到氢能已被纳入能源组合,本文从每公斤氢气的成本、以千瓦时为单位的耗电量、制氢所使用的原料及其优缺点等方面,对生物质转化为氢气的方法进行了比较。文章重点介绍了这些转化方法的案例研究应用,并在讨论过程中探讨了它们的优势和局限性。本文深入探讨了生物质制氢的前景和挑战,综述了研究文献、对效率提高、先进技术水平和催化剂开发的见解。文章讨论了催化剂、机器学习和人工智能的作用,以及提高制氢效率的其他因素。文章还探讨了食品供应、技术经济限制、环境影响和能源消耗等挑战。文章最后强调了生物质氢在交通、商业流程和政策变化中的当前应用、前景和整体重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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